0
Toggle navigation
全部
生化試劑
酶和輔酶
酶
輔酶
酶底物
膠原酶
食品和乳品檢測用酶和輔酶
診斷試劑用酶和輔酶
蛋白質(zhì)
植物源蛋白質(zhì)
動物源蛋白質(zhì)
蛋白質(zhì)-重組蛋白
多肽
底物肽
激素肽與神經(jīng)肽
多肽藥物遞送
藥物肽
β淀粉樣肽與微管蛋白肽
抗微生物肽
細(xì)胞黏附肽
化妝品肽
標(biāo)記肽
肽表位
膠原蛋白肽分子量分布
大豆肽分子量分布
其它多肽
碳水化合物
單糖
二糖
寡糖
多糖
環(huán)糊精
纖維素
淀粉
氨基酸
20種天然氨基酸
FMOC保護(hù)氨基酸
BOC保護(hù)氨基酸
CBZ保護(hù)氨基酸
維生素
維生素
抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
聚乙烯亞胺(PEI)
聚乳酸(PL)
聚乙烯醇(PVA)
脂肪酸系列
脂肪酸系列-有機(jī)酸
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
血制品
全血
紅細(xì)胞
血制品-血清
血漿
溶血活性實驗
其他生化試劑
其他生化試劑
抗體
抗體蛋白
抗體類
標(biāo)準(zhǔn)品
中藥標(biāo)準(zhǔn)品
黃酮及類黃酮
生物堿
甾體及甾體皂苷類
花青素類
醌類
酚類
糖類
標(biāo)準(zhǔn)品-維生素
標(biāo)準(zhǔn)品-有機(jī)酸
化學(xué)標(biāo)準(zhǔn)品
化學(xué)標(biāo)準(zhǔn)品
對照藥材
對照藥材
標(biāo)準(zhǔn)溶液
分析滴定液
儀器校準(zhǔn)溶液
混合標(biāo)準(zhǔn)溶液
其他標(biāo)準(zhǔn)溶液
同位素標(biāo)準(zhǔn)品
氫標(biāo)記
碳標(biāo)記
氮標(biāo)記
氧標(biāo)記
混合標(biāo)記
其它
有證標(biāo)準(zhǔn)物質(zhì)
溯源標(biāo)準(zhǔn)品
溯源標(biāo)準(zhǔn)品
食品檢測
農(nóng)殘標(biāo)品
獸殘標(biāo)品
抗氧化劑
食品檢測-防腐劑
食品檢測-著色劑
護(hù)色劑
營養(yǎng)強化劑
增味劑
甜味劑
食品用香料
食品檢測-真菌毒素
食品檢測-激素
食品檢測-脂肪酸
藥品檢測
化藥檢測
中藥及中成藥檢測
環(huán)境檢測
大氣
土質(zhì)、土壤
水質(zhì)
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農(nóng)殘
飼料檢測-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信號通路
代謝
G蛋白偶聯(lián)受體
神經(jīng)科學(xué)
細(xì)胞凋亡
表觀遺傳
蛋白酪氨酸激酶
微生物學(xué)
血管生成
細(xì)胞周期
離子通道
免疫與炎癥
DNA 損傷和修復(fù)
自噬
細(xì)胞骨架
干細(xì)胞
PI3K/Akt/mTOR 信號通路
蛋白酶體
MAPK 信號通路
JAK/STAT 信號通路
內(nèi)分泌與激素
其他
化合物庫
抑制劑庫
激酶抑制劑庫
FDA批準(zhǔn)的藥物庫
天然產(chǎn)物庫
生物活性化合物庫
酪氨酸激酶抑制劑庫
表觀遺傳學(xué)化合物庫
干細(xì)胞信號化合物庫
GPCR化合物庫
劍橋癌癥化合物庫
蛋白酶抑制劑庫
自噬化合物庫
離子通道配體庫
PI3K_Akt抑制劑庫
抗糖尿病化合物庫
抗癌化合物庫
抗感染化合物庫
凋亡化合物庫
MAPK抑制劑庫
高選擇性抑制劑庫
代謝化合物庫
靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
蛋白提取和純化-裂解液
蛋白提取試劑盒
蛋白檢測
蛋白定量
蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
漂洗液
顯影液
蛋白預(yù)制膠
免疫檢測
免疫檢測
免疫組化
組織制備
抗原修復(fù)液
組織封閉
抗體稀釋
顯色與復(fù)染
特異性染色
封片劑
免疫其他相關(guān)試劑
免疫其他相關(guān)試劑
蛋白其他相關(guān)試劑
蛋白其他相關(guān)試劑
細(xì)胞生物學(xué)
感受態(tài)細(xì)胞
表達(dá)感受態(tài)細(xì)胞
克隆感受態(tài)細(xì)胞
酵母感受態(tài)細(xì)胞
發(fā)根農(nóng)桿菌感受態(tài)細(xì)胞
根癌農(nóng)桿菌感受態(tài)細(xì)胞
其他感受態(tài)細(xì)胞
細(xì)胞培養(yǎng)
基礎(chǔ)培養(yǎng)基
無血清培養(yǎng)基
平衡鹽溶液
細(xì)胞培養(yǎng)-血清
細(xì)胞生長因子
污染物清除劑
細(xì)胞凍存
細(xì)胞消化液
細(xì)胞分離
細(xì)胞裂解
分離液
免疫磁珠
酶抑制劑
細(xì)胞檢測
細(xì)胞檢測-細(xì)胞染色
細(xì)胞增殖與分化
細(xì)胞凋亡與自噬
細(xì)胞轉(zhuǎn)染
細(xì)胞轉(zhuǎn)染
抗生素溶液
抗生素溶液
其它細(xì)胞相關(guān)
其它細(xì)胞相關(guān)
分子生物學(xué)
核酸提取和純化
核酸提取和純化-裂解液
提取試劑盒
核酸電泳
DNA Marker
核酸電泳-電泳緩沖液
瓊脂糖
凝膠加樣緩沖液
核酸染料
核酸染料
PCR相關(guān)
聚合酶
擴(kuò)增緩沖液
PCR Master Mix
三磷酸脫氧核糖核苷酸
核酸其他相關(guān)試劑
核酸其他相關(guān)試劑
染色液
HE染色
HE染色
微生物染色
微生物染色
植物染色
染色液-植物染色
骨組織染色
骨組織染色
結(jié)締組織染色
結(jié)締組織染色
碳水化合物染色
碳水化合物染色
金屬及鹽染色
金屬及鹽染色
脂類染色
脂類染色
神經(jīng)染色
神經(jīng)染色
色素染色
色素染色
酶類染色
酶類染色
細(xì)胞染色
染色液-細(xì)胞染色
蛋白染色
染色液-蛋白染色
核酸染色
核酸染色
其他染色液
其他染色液
常規(guī)溶液
人工模擬液
胃液
腸液
體液
汗液
唾液
血液
腦脊液
尿液
膽汁
緩沖液
PBS緩沖液
Tris-HCl緩沖液
檸檬酸鹽緩沖液
pH標(biāo)準(zhǔn)緩沖液
HEPES緩沖液
硼酸鹽緩沖液
乙酸鈉緩沖液
Tris-EDTA緩沖液
MOPS緩沖液
甘氨酸緩沖液
其他緩沖液
指示劑
酸堿指示劑
金屬指示劑
沉淀滴定指示劑
固定液
戊二醛固定液
多聚甲醛固定液
環(huán)保組織固定液
其它固定液
其他常規(guī)溶液
其他常規(guī)溶液
檢測試劑盒
氧化應(yīng)激系列
氧化應(yīng)激系列
ASA-GSH循環(huán)系列
ASA-GSH循環(huán)系列
土壤酶系列
土壤酶系列
氮代謝系列
氮代謝系列
碳水化合物系列
碳水化合物系列
光合作用系列
光合作用系列
細(xì)胞壁代謝系列
細(xì)胞壁代謝系列
脂肪酸系列
脂肪酸系列
苯丙烷代謝系列
苯丙烷代謝系列
脯氨酸代謝系列
脯氨酸代謝系列
醫(yī)學(xué)基礎(chǔ)代謝系列
醫(yī)學(xué)基礎(chǔ)代謝系列
呼吸與能量代謝途徑
呼吸與能量代謝途徑
三羧酸循環(huán)系列
三羧酸循環(huán)系列
糖酵解系列
糖酵解系列
糖異生途徑
糖異生途徑
磷酸戊糖途徑
磷酸戊糖途徑
其他檢測試劑盒
其他檢測試劑盒
化學(xué)類
砌塊
含氟砌塊
鹵代雜環(huán)
雜環(huán)砌塊
有機(jī)砌塊
配體
Buchwald 配體
手性配體
NHC配體及配合物
膦配體
催化劑
手性催化劑
有機(jī)催化劑
光催化劑
過渡金屬催化劑
交叉偶聯(lián)催化劑
加氫催化劑
烯烴復(fù)分解置換
Buchwald催化劑
無機(jī)催化劑
C-H活化催化劑
化學(xué)合成
手性助劑
有機(jī)金屬試劑
硼酸及其衍生物
格氏試劑
有機(jī)硅試劑
離子液體
C-C鍵形成試劑
偶聯(lián)試劑
鹵化試劑
氧化劑
保護(hù)和脫保護(hù)試劑
還原劑
香精香料
實驗室化學(xué)品
苛性堿和堿
酸
卡爾費休試劑
色譜和光譜試劑
衍生化試劑
溶劑
儀器分析試劑
金屬
鹽
分析色譜
材料科學(xué)
能源材料
燃料電池催化劑
電池材料
燃料電池膜與材料
硫族化物 (硫?qū)倩?
氧化物與陶瓷
高純鹽
高純金屬及合金
量子點
溶液和氣相沉積前驅(qū)體
太陽能材料
電子材料
磁性材料
無機(jī)和金屬納米材料
碳納米材料(碳納米管、石墨烯和富勒烯)
液晶
OFET和OPV材料
OLED和PLED材料
光子和光學(xué)材料
印刷電子材料
基板和預(yù)制電子器件
特種與智能聚合物
硅材料
電子化學(xué)品和蝕刻劑
自組裝和接觸印刷
生物醫(yī)學(xué)材料
生物醫(yī)用高分子
親水性高分子
疏水性高分子
聚乙二醇修飾劑 (PEGs和PEOs)
3D生物打印
聚合單體
聚合物微球和納米粒子
動物造模試劑
神經(jīng)系統(tǒng)造模
癲癇模型
精神分裂癥模型
腦水腫模型
帕金森模型
呼吸系統(tǒng)造模
呼吸系統(tǒng)造模
皮膚相關(guān)造模
皮膚相關(guān)造模
耳鼻喉頭頸外造模
耳鼻喉頭頸外造模
泌尿系統(tǒng)造模
泌尿系統(tǒng)造模
免疫系統(tǒng)造模
免疫系統(tǒng)造模
內(nèi)分泌系統(tǒng)造模
內(nèi)分泌系統(tǒng)造模
生殖系統(tǒng)造模
生殖系統(tǒng)造模
消化系統(tǒng)造模
消化系統(tǒng)造模
循環(huán)系統(tǒng)造模
循環(huán)系統(tǒng)造模
眼科相關(guān)造模
眼科相關(guān)造模
運動系統(tǒng)造模
運動系統(tǒng)造模
植物應(yīng)用
植物培養(yǎng)&遺傳轉(zhuǎn)化
植物凝膠
MS培養(yǎng)基
組培培養(yǎng)基
植物營養(yǎng)液
遺傳轉(zhuǎn)化試劑
培養(yǎng)基組分
植物流式試劑
植物組分及細(xì)胞器提取
酵母雜交&異源互補
完全培養(yǎng)基/Rich Media
缺陷培養(yǎng)基基礎(chǔ)/Minial Media Base
缺陷氨基酸混合物(DO)
缺陷培養(yǎng)基(SD/SC)
酵母雜交套裝
雜交試劑盒
轉(zhuǎn)化與鑒定
核酸蛋白提取
畢赤酵母蛋白表達(dá)
釀酒酵母表達(dá)
裂殖酵母培養(yǎng)
酵母衍生實驗
酵母表面展示
植物檢測試劑盒
植物檢測試劑盒-植物染色
植物檢測試劑盒-光合作用系列
植物代謝物檢測
透析袋
即用型
再生纖維素透析袋
纖維素透析袋
普通型
普通型
透析裝置
透析裝置
生化試劑
酶和輔酶
酶
輔酶
酶底物
膠原酶
食品和乳品檢測用酶和輔酶
診斷試劑用酶和輔酶
蛋白質(zhì)
植物源蛋白質(zhì)
動物源蛋白質(zhì)
蛋白質(zhì)-重組蛋白
多肽
底物肽
激素肽與神經(jīng)肽
多肽藥物遞送
藥物肽
β淀粉樣肽與微管蛋白肽
抗微生物肽
查看更多
碳水化合物
單糖
二糖
寡糖
多糖
環(huán)糊精
纖維素
查看更多
氨基酸
20種天然氨基酸
FMOC保護(hù)氨基酸
BOC保護(hù)氨基酸
CBZ保護(hù)氨基酸
維生素
維生素
抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
查看更多
脂肪酸系列
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
血制品
全血
紅細(xì)胞
血制品-血清
血漿
溶血活性實驗
其他生化試劑
其他生化試劑
抗體
抗體類
標(biāo)準(zhǔn)品
中藥標(biāo)準(zhǔn)品
黃酮及類黃酮
生物堿
萜類及其衍生物
甾體及甾體皂苷類
苯丙素類
花青素類
查看更多
化學(xué)標(biāo)準(zhǔn)品
化學(xué)標(biāo)準(zhǔn)品
對照藥材
對照藥材
標(biāo)準(zhǔn)溶液
分析滴定液
儀器校準(zhǔn)溶液
混合標(biāo)準(zhǔn)溶液
其他標(biāo)準(zhǔn)溶液
同位素標(biāo)準(zhǔn)品
氫標(biāo)記
碳標(biāo)記
氮標(biāo)記
氧標(biāo)記
混合標(biāo)記
其它
有證標(biāo)準(zhǔn)物質(zhì)
溯源標(biāo)準(zhǔn)品
溯源標(biāo)準(zhǔn)品
食品檢測
農(nóng)殘標(biāo)品
獸殘標(biāo)品
抗氧化劑
食品檢測-防腐劑
食品檢測-著色劑
護(hù)色劑
查看更多
藥品檢測
化藥檢測
中藥及中成藥檢測
環(huán)境檢測
大氣
土質(zhì)、土壤
水質(zhì)
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農(nóng)殘
飼料檢測-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信號通路
代謝
G蛋白偶聯(lián)受體
神經(jīng)科學(xué)
細(xì)胞凋亡
表觀遺傳
蛋白酪氨酸激酶
查看更多
化合物庫
抑制劑庫
激酶抑制劑庫
FDA批準(zhǔn)的藥物庫
天然產(chǎn)物庫
生物活性化合物庫
酪氨酸激酶抑制劑庫
查看更多
靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
蛋白提取和純化-裂解液
蛋白提取試劑盒
蛋白檢測
蛋白定量
蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
查看更多
免疫檢測
免疫檢測
免疫組化
組織制備
抗原修復(fù)液
組織封閉
抗體稀釋
顯色與復(fù)染
特異性染色
查看更多
免疫其他相關(guān)試劑
免疫其他相關(guān)試劑
蛋白其他相關(guān)試劑
蛋白其他相關(guān)試劑
細(xì)胞生物學(xué)
感受態(tài)細(xì)胞
表達(dá)感受態(tài)細(xì)胞
克隆感受態(tài)細(xì)胞
酵母感受態(tài)細(xì)胞
發(fā)根農(nóng)桿菌感受態(tài)細(xì)胞
根癌農(nóng)桿菌感受態(tài)細(xì)胞
其他感受態(tài)細(xì)胞
細(xì)胞培養(yǎng)
基礎(chǔ)培養(yǎng)基
無血清培養(yǎng)基
平衡鹽溶液
細(xì)胞培養(yǎng)-血清
細(xì)胞生長因子
污染物清除劑
查看更多
細(xì)胞分離
細(xì)胞裂解
分離液
免疫磁珠
酶抑制劑
細(xì)胞檢測
細(xì)胞檢測-細(xì)胞染色
細(xì)胞增殖與分化
細(xì)胞凋亡與自噬
細(xì)胞轉(zhuǎn)染
細(xì)胞轉(zhuǎn)染
抗生素溶液
抗生素溶液
其它細(xì)胞相關(guān)
其它細(xì)胞相關(guān)
分子生物學(xué)
核酸提取和純化
核酸提取和純化-裂解液
提取試劑盒
核酸電泳
DNA Marker
核酸電泳-電泳緩沖液
瓊脂糖
凝膠加樣緩沖液
核酸染料
核酸染料
PCR相關(guān)
聚合酶
擴(kuò)增緩沖液
PCR Master Mix
三磷酸脫氧核糖核苷酸
核酸其他相關(guān)試劑
核酸其他相關(guān)試劑
服務(wù)與支持
技術(shù)支持
意見反饋
新聞中心
大包裝詢價
下載專區(qū)
快遞查詢
文獻(xiàn)引用
400-666-5481
首頁
>
生化試劑
>
碳水化合物
>
多糖
>
羧甲基殼聚糖
羧甲基殼聚糖
羧化度≥80%
Carboxymethyl Chitosan
品牌:
源葉
產(chǎn)品編號:
S30948
一鍵復(fù)制產(chǎn)品信息
CAS號:
83512-85-0
×
羧甲基殼聚糖 羧化度≥80%
貨號
規(guī)格
價格
上海
北京
武漢
南京
購買數(shù)量
S30948-100g
羧化度≥80%
¥260.00
S30948-100g ¥260.00 現(xiàn)貨
56
7
>10
6
-
1
-
+
S30948-500g
羧化度≥80%
¥1000.00
S30948-500g ¥1000.00 現(xiàn)貨
24
0
>10
-
-
-
-
+
大包裝詢價
加入購物車
產(chǎn)品介紹
參考文獻(xiàn)(126篇)
質(zhì)檢證書(COA)
摩爾濃度計算器
相關(guān)產(chǎn)品
產(chǎn)品介紹
用作高級化妝品添加劑、重金屬螯合劑、藥物緩釋劑、植物生長劑等,本產(chǎn)品用于科研實驗研究。
溶解性:
Souble in H2O
儲存條件:
RT
注意:
部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權(quán)威性,僅供客戶參考交流研究之用。
參考文獻(xiàn)(126篇)
126. [IF=7.7] Wenwen Zhang et al."Research progress and application of chitosan dressings in hemostasis: A review."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Oct;:136421
125. [IF=4.9] Wei Liu et al."Antioxidant films loaded with β-cyclodextrin-quercetin for enhancing food preservation."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2025 Jan;705:135539
124. [IF=7.7] Qi Bao et al."Adsorption characteristics and mechanism of novel ink melanin composite modified chitosan for Cd(II) in water."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Dec;282:137147
123. [IF=12.7] Min Qi et al."Gradient-Coated Radial-Structured Scaffolds for Rapid Dural Regeneration: Providing fast migration pathways and strong migration dynamics."COMPOSITES PART B-ENGINEERING.2024 Nov;:111975
122. [IF=8.3] Bingqian Jiao et al."Tyrosinase Oxidative Cross-Linking in the Cell-Like Crowded Microenvironment for Visible Inhibitor Screening."ACS Applied Materials & Interfaces.2024;XXXX(XXX):XXX-XXX
121. [IF=4] Zhixi Li et al."Molecular studies between chitosan and graphene oxide-chitosan nanocomposites with β-galactosidase: From interaction mechanism to structural and functional changes."JOURNAL OF MOLECULAR STRUCTURE.2025 Mar;1325:140992
120. [IF=7.7] Yongyi Yang et al."Double-alternating injectable multifunctional hydrogel based on chitosan for skin wound repair."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Jan;287:138413
119. [IF=7.7] Chengkun Ren et al."Injectable and self-healing carboxymethyl chitosan/carboxymethyl cellulose/marine snail peptide hydrogel for infected wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Dec;:138784
118. [IF=7.7] Zhongfei Gao et al."Bifunctional modified bacterial cellulose-based hydrogel through sequence-dependent crosslinking towards enhanced antibacterial and cutaneous wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Jan;:139737
117. [IF=7.7] Ziwei Wu et al."Dual-stimuli-responsive carboxymethyl chitosan/sodium lignosulfonate microcapsules from oppositely charged biopolymers for smart pesticide release."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Apr;299:140102
116. [IF=7.7] Hongyan Zhang et al."Lutein-loaded multifunctional hydrogel dressing based on carboxymethyl chitosan for chronic wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Apr;300:140219
115. [IF=11] Zihao Wei et al."Fabrication of core–shell–shell nanoparticles as co-encapsulation systems via ultrasonic treatment optimization: Encapsulation performance and programmed sequential release analyses."FOOD HYDROCOLLOIDS.2025 Jul;164:111199
114. [IF=27.4] Shuai Zhang et al."DNA-Capturing Manganese-Coordinated Chitosan Microparticles Potentiate Radiotherapy via Activating the cGAS-STING Pathway and Maintaining Tumor-Infiltrating CD8+ T-Cell Stemness."ADVANCED MATERIALS.2025 Feb;:2418583
113. [IF=10.7] Guihua Chen et al."Multifunctional hydrogel dressing composed of trichosanthes polysaccharide and carboxymethyl chitosan accelerate cachectic wound healing and reduce scar hyperplasia."CARBOHYDRATE POLYMERS.2025 Feb;:123378
112. [IF=27.4] Ren Yan et al."Autonomous, Moisture-Driven Flexible Electrogenerative Dressing for Enhanced Wound Healing."ADVANCED MATERIALS.2025 Feb;:2418074
111. [IF=7.7] Meng Sun et al."Enhancing lipase enzymatic performance with dynamic covalent dextran-based hydrogels."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Feb;:141254
110. [IF=1.5] Di Zhang et al."Multifunctional Natural Herbal Extracts Liposomal Loaded Hybrid Hydrogel for Skin Improvement and Repair."Natural Product Communications.;():
109. [IF=18.5] Yang Zheng et al."Injectable Gypsogenin-Based Composite Hydrogel Enhances Osteoporotic Bone Regeneration by Alleviating Oxidative Injury via Promoting AMPKα Phosphorylation."ADVANCED FUNCTIONAL MATERIALS.2025 Apr;:2424326
108. [IF=2.3] Yiwan Shi et al."Preparation and osteogenesis of a multiple crosslinking silk fibroin/carboxymethyl chitosan/sodium alginate composite scaffold loading with mesoporous silica/poly (lactic acid-glycolic acid) microspheres."JOURNAL OF BIOMATERIALS APPLICATI
107. [IF=4.2] Mingjun Chen et al."Application of calcium hypochlorite and carboxymethyl chitosan as combined depressants for selective flotation separation of chalcopyrite from pyrite at low alkalinity."ADVANCED POWDER TECHNOLOGY.2024 Nov;35:104649
106. [IF=7.7] Hao Wu et al."O-Carboxymethyl chitosan nanoparticles: A novel approach to enhance water stress tolerance in maize seedlings."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Oct;277:134459
105. [IF=11] Jialin Sun et al."Multifunctional intelligent indication labels featuring antibacterial properties based on pectin/carboxymethyl chitosan incorporated with porous microspheres loaded with anthocyanins: A new approach for salmon preservation and freshness
104. [IF=13.3] Zixuan Zhou et al."A dopamine-assisted antioxidative in situ-forming hydrogel with photothermal therapy for enhancing scarless burn wound healing."CHEMICAL ENGINEERING JOURNAL.2024 Oct;498:155389
103. [IF=4.2] Anmei Yu et al."Influence of carboxymethyl chitosan on selective flotation separation of smithsonite from calcite with sodium oleate."ADVANCED POWDER TECHNOLOGY.2024 Sep;35:104604
102. [IF=4.9] Yanling Liang et al."Preparation and properties of ultra-thin-walled energy storage paraffin microcapsules for naval applications."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2024 Nov;701:134881
101. [IF=6.5] Qian Wang et al."Improving physical stability of microalgae protein-based emulsions under acidic and neutral conditions via carboxymethyl chitosan complexation."Food Chemistry-X.2024 Oct;23:101690
100. [IF=3.8] Liqing Zhu et al."Tannic acid modified keratin/sodium alginate/carboxymethyl chitosan biocomposite hydrogels with good mechanical properties and swelling behavior."Scientific Reports.2024; 14: 12864
99. [IF=3.9] Jingrong Yu et al."Carboxymethyl chitosan-methacrylic acid gelatin hydrogel for wound healing and vascular regeneration."Biomedical Materials.2024 Jun;:
98. [IF=7.7] Ping Ouyang et al."Preparation and evaluation of microencapsulated delivery system of recombinant interferon alpha protein from rainbow trout."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Jul;273:132872
97. [IF=9.4] Mengyu Yang et al."Green synthesis-inspired antibacterial, antioxidant and adhesive hydrogels with ultra-fast gelation and hemostasis for promoting infected skin wound healing."Acta Biomaterialia.2024 Jun;:
96. [IF=5] Kai Wang et al."Polyethylene Glycol-Modified Cationic Liposome as a Promising Nano Spray for Acute Pneumonia Treatment."Polymers".2024 Jan;16(10):1384
95. [IF=5.2] Lijia Li et al."Interpenetrating network based on soybean protein isolate and carboxymethyl chitosan: Investigation of intermolecular reaction mechanism, physicochemical stability and in vitro release properties of the hydrogel."Food Bioscience".2024 Aug;
94. [IF=15.1] Shuyun Zhang et al."Dual response Hst1@CBTC hydrogel promoting diabetic wounds healing by improving mitochondrial autophagy and inhibiting ferroptosis via Nrf2/HO-1."CHEMICAL ENGINEERING JOURNAL".2024 May;:152358
93. [IF=6.1] Zhouya Bai et al."Recycling of wheat gluten wastewater: Recovery of arabinoxylan and application of its film in cherry and strawberry preservation."Food Chemistry-X".2024 Jun;22:101415
92. [IF=8.2] Yahao Ma et al."Quaternary ammonium carboxymethyl chitosan composite hydrogel with efficient antibacterial and antioxidant properties for promoting wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 May;268:131871
91. [IF=11.2] Shanshan Jin et al."Nanofiber-reinforced self-healing polysaccharide-based hydrogel dressings for pH discoloration monitoring and treatment of infected wounds."CARBOHYDRATE POLYMERS".2024 Apr;:122209
90. [IF=11.2] Zhendong Mo et al."Protamine-grafted carboxymethyl chitosan based hydrogel with adhesive and long-term antibacterial properties for hemostasis and skin wound healing."CARBOHYDRATE POLYMERS".2024 Jul;336:122125
89. [IF=8.2] Zhiwan Chen et al."Succinylated chitosan derivative restore HUVEC cells function damaged by TNF-α and high glucose in vitro and enhanced wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Mar;:130825
88. [IF=9.5] Qiuye Jia et al."Hydrogel Loaded with Peptide-Containing Nanocomplexes: Symphonic Cooperation of Photothermal Antimicrobial Nanoparticles and Prohealing Peptides for the Treatment of Infected Wounds."ACS Applied Materials & Interfaces".2024;XXXX(XXX):XXX-
87. [IF=8.2] Kaiyue Liu et al."Cowberry extract loaded chitosan hydrogel with photothermal and antioxidant properties promotes infected wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 Mar;262:129988
86. [IF=10.7] Yi Li et al."A pH-sensitive W/O/W emulsion-bound carboxymethyl chitosan-alginate hydrogel bead system through the Maillard reaction for probiotics intestine-targeted delivery."FOOD HYDROCOLLOIDS".2024 Aug;153:109956
85. [IF=15.1] Huiyi Yang et al."Multifunctional group mediated double cross-linked polysaccharide complex hydrogel for microenvironmental regulation and repair of endometrial injury."CHEMICAL ENGINEERING JOURNAL".2024 Apr;485:149843
84. [IF=8.2] Ze Lv et al."A biodegradable oxidized starch/carboxymethyl chitosan film coated with pesticide-loaded ZIF-8 for tomato fusarium wilt control."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Feb;259:129249
83. [IF=8.2] Yuanmeng He et al."ROS/pH dual responsive PRP-loaded multifunctional chitosan hydrogels with controlled release of growth factors for skin wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Feb;258:128962
82. [IF=8.2] Yan Yue et al."A carboxymethyl chitosan/oxidized hyaluronic acid composite hydrogel dressing loading with stem cell exosome for chronic inflammation wounds healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Feb;257:128534
81. [IF=8.2] Yongqi Zhang et al."Surface modification of polyvinyl chloride with sodium alginate/carboxymethyl chitosan and heparin for realizing the anticoagulation."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Jan;254:127653
80. [IF=8.2] Kaiyue Liu et al."Mild hyperthermia-assisted chitosan hydrogel with photothermal antibacterial property and CAT-like activity for infected wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Nov;:128027
79. [IF=8.2] Dejian Bian et al."Ultrafast self-gelling, sprayable, and adhesive carboxymethyl chitosan/poly-γ-glutamic acid/oxidized dextran powder for effective gastric perforation hemostasis and wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 N
78. [IF=8.2] Rong Chang et al."PMN-incorporated multifunctional chitosan hydrogel for postoperative synergistic photothermal melanoma therapy and skin regeneration."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.10.1016/j.ijbiomac.2023.126854
77. [IF=8.2] Qun Zheng et al."Green synthesis of a chlorfenapyr chitosan nanopesticide for maize root application: Reducing environmental pollution and risks to nontarget organisms."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.10.1016/j.ijbiomac.2023.126988
76. [IF=3.7] Ze Lv et al."Biodegradable Carboxymethyl Chitosan/Polyvinyl Alcohol Hymexazol-Loaded Mulch Film for Soybean Root Rot Control."Agronomy-Basel.2023 Sep;13(9):2205
75. [IF=8.2] Nuo Wei et al."Sodium alginate-carboxymethyl chitosan hydrogels loaded with difenoconazole for pH-responsive release to control wheat crown rot."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Dec;252:126396
74. [IF=8.2] Meihan Fang et al."Fabrication of carboxymethyl chitosan films for cheese packaging containing gliadin-carboxymethyl chitosan nanoparticles co-encapsulating natamycin and theaflavins."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Aug;246:125685
73. [IF=5] Wenrui Xiao et al."Injectable Nanocomposite Hydrogels with the NIR-Triggered Low-Temperature Photothermal Effect and Low-Dose Antibiotic Release."ACS Applied Polymer Materials.2023;XXXX(XXX):XXX-XXX
72. [IF=4.432] Qiulin Wang et al."Chitosan Hydrogel as Tissue Engineering Scaffolds for Vascular Regeneration Applications."Gels.2023 May;9(5):373
71. [IF=7.968] Huajun Wang et al."Adsorption of Zn2+ ion by macadamia nut shell biochar modified with carboxymethyl chitosan and potassium ferrate."Journal of Environmental Chemical Engineering.2023 Jun;11:110150
70. [IF=10.753] Sheng-nan Li et al."Nano-pesticide carrier O-Carboxymethyl chitosan is indigestible in Apis cerana cerana and affects intestinal flora."SCIENCE OF THE TOTAL ENVIRONMENT.2023 Aug;885:163769
69. [IF=6.056] Suwen Liu et al."Insights into the in vitro digestion, antioxidant, and antibacterial properties of hawthorn polyphenol nanoparticles."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Apr;:114804
68. [IF=8.749] Jialin Sun et al."Preparation and characterization of multifunctional films based on pectin and carboxymethyl chitosan: Forming microchambers for high-moisture fruit preservation."Food Packaging and Shelf Life.2023 Jun;37:101073
67. [IF=3.662] Jianwei Zheng et al."Preparation and characterization of carboxymethyl chitosan/κ-carrageenan/silver nanoparticles sponge for wound dressing."Materials Today Communications.2023 Jun;35:105818
66. [IF=4.967] Kun Cai et al."Essential Oil Nanoemulsion Hydrogel with Anti-Biofilm Activity for the Treatment of Infected Wounds."Polymers.2023 Jan;15(6):1376
65. [IF=5.364] Lisu Li et al."Bletilla striata Polysaccharide Nanoparticles Improved the Therapeutic Efficacy of Omeprazole on the Rat Gastric Ulcer Induced by Ethanol."MOLECULAR PHARMACEUTICS.2023;XXXX(XXX):XXX-XXX
64. [IF=5.518] Li Wang et al."The Rheological/interfacial Behavior and Stability Properties of Nanoemulsions Prepared Using Whey Protein-carboxymethyl Chitosan Conjugates."COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS.2023 Jan;:130924
63. [IF=8.025] Mengxia Duan et al."Insights into electrospun pullulan-carboxymethyl chitosan/PEO core-shell nanofibers loaded with nanogels for food antibacterial packaging."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Apr;233:123433
62. [IF=8.025] Fengbiao Guo et al."A Schiff base hydrogel dressing loading extracts from Periplaneta Americana for diabetic wound healing."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Mar;230:123256
61. [IF=8.025] Yukai Lin et al."A composite hydrogel scaffold based on collagen and carboxymethyl chitosan for cartilage regeneration through one-step chemical crosslinking."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Jan;226:706
60. [IF=9.231] Jianyong Zhang et al."Stability of glycosylated complexes loaded with Epigallocatechin 3-gallate (EGCG)."FOOD CHEMISTRY.2023 Jun;410:135364
59. [IF=10.723] Zexiang Zheng et al."An injectable and pH-responsive hyaluronic acid hydrogel as metformin carrier for prevention of breast cancer recurrence."CARBOHYDRATE POLYMERS.2023 Mar;304:120493
58. [IF=10.723] Zheng Chen et al."A triple-network carboxymethyl chitosan-based hydrogel for hemostasis of incompressible bleeding on wet wound surfaces."CARBOHYDRATE POLYMERS.2022 Dec;:120434
57. [IF=8.025] Zheng Chen et al."Injectable wound dressing based on carboxymethyl chitosan triple-network hydrogel for effective wound antibacterial and hemostasis."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2022 Nov;:
56. [IF=9.231] Chen Yang et al."Carboxymethyl chitosan coated alpha-linolenic acid nanoliposomes: preparation, stability and release in vitro and in vivo."FOOD CHEMISTRY.2022 Oct;:134526
55. [IF=5.532] Qinghua Wei et al."Modification of hydroxyapatite (HA) powder by carboxymethyl chitosan (CMCS) for 3D printing bioceramic bone scaffolds."CERAMICS INTERNATIONAL.2022 Sep;:
54. [IF=10.633] Huihui Zeng et al."Self-healing, injectable hydrogel based on dual dynamic covalent cross-linking against postoperative abdominal cavity adhesion."Acta Biomaterialia.2022 Aug;:
53. [IF=11.504] Wanjun Zhao et al."Development of food-grade oleogel via the aerogel-templated method: Oxidation stability, astaxanthin delivery and emulsifying application."FOOD HYDROCOLLOIDS.2023 Jan;134:108058
52. [IF=8.025] Yunfei Tan et al."Injectable hyaluronic acid/hydroxyapatite composite hydrogels as cell carriers for bone repair."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2022 Sep;216:547
51. [IF=6.064] Peng Sun et al."Injectable, Adhesive, and Self-Healing Composite Hydrogels Loaded With Oxybutynin Hydrochloride for the Treatment of Overactive Bladder in Rats."Frontiers in Bioengineering and Biotechnology.2022; 10: 906835
50. [IF=10.723] Lei Ma et al."Injectable oxidized alginate/carboxylmethyl chitosan hydrogels functionalized with nanoparticles for wound repair."CARBOHYDRATE POLYMERS.2022 Oct;293:119733
49. [IF=31.041] Yu Hao et al."Percutaneous implantation of ethanol fueled catalytic hydrogel suppresses tumor growth by triggering ferroptosis."Mater Today. 2022 Apr;:
48. [IF=6.953] Xinru Wu et al."Investigation of construction and characterization of carboxymethyl chitosan - sodium alginate nanoparticles to stabilize Pickering emulsion hydrogels for curcumin encapsulation and accelerating wound healing."INTERNATIONAL JOURNAL OF BIOLO
47. [IF=6.953] Xinye Liu et al."Physicochemical properties of films produced using nanoemulsions stabilized by carboxymethyl chitosan-peptide conjugates and application in blueberry preservation."Int J Biol Macromol. 2022 Mar;202:26
46. [IF=4.952] Yue Dong et al."Oleogel-based Pickering emulsions stabilized by ovotransferrin–carboxymethyl chitosan nanoparticles for delivery of curcumin."Lwt Food Sci Technol. 2022 Mar;157:113121
45. [IF=2.744] Ning Yu et al."Healing effect of carboxymethyl chitosan-plantamajoside hydrogel on burn wound skin."Burns. 2022 Jan;:
44. [IF=9.381] Hongli Mao et al."Multifunctional polysaccharide hydrogels for skin wound healing prepared by photoinitiator-free crosslinking."Carbohyd Polym. 2022 Jun;285:119254
43. [IF=3.361] Fushi Wang et al."Fabrication and functionalization of biocompatible carboxymethyl chitosan/gelatin membranes via anodic electrophoretic deposition."Rsc Adv. 2022 Feb;12(9):5677-5685
42. [IF=9.381] Yuanping Hao et al."Carboxymethyl chitosan-based hydrogels containing fibroblast growth factors for triggering diabetic wound healing."Carbohyd Polym. 2022 Jul;287:119336
41. [IF=6.4] Dan Zhao et al."Screening of Chitosan Derivatives-Carbon Dots Based on Antibacterial Activity and Application in Anti-
Staphylococcus aureus
Biofilm."Int J Nanomed. 2022 Mar;17:937-952
40. [IF=2.571] Liupeng Yang et al."Fabricated chlorantraniliprole loaded chitosan/alginate hydrogel rings effectively control Spodoptera frugiperda in maize ears."Crop Prot. 2021 May;143:105539
39. [IF=3.426] Song Feng et al."Coumarin-Containing Light-Responsive Carboxymethyl Chitosan Micelles as Nanocarriers for Controlled Release of Pesticide."Polymers-Basel. 2020 Oct;12(10):2268
38. [IF=3.517] Jianfeng Guo et al."Efficient synthesis strategy of folate-modified carboxymethyl chitosan/CaCO3 hybrid nanospheres and their drug-carrying and sustained release properties."J Biomat Sci-Polym E. 2021;32(6):799-812
37. [IF=3.989] Yuanbo Wu et al."Polysaccharide-Based Lotus Seedpod Surface-Like Porous Microsphere as an Efficient Drug Carrier for Cancer Treatment."Cancer Manag Res. 2021; 13: 4067–4076
36. [IF=4.411] Zhe Jiang et al."One-Step Preparation of Chitosan-Based Magnetic Adsorbent and Its Application to the Adsorption of Inorganic Arsenic in Water."Molecules. 2021 Jan;26(6):1785
35. [IF=4.539] Tao Tian et al."Facile fabrication of polyacrylic acid functionalized carboxymethyl chitosan microspheres for selective and efficient removal of Ni(II) from multicomponent wastewater."Colloid Surface A. 2020 Jul;597:124676
34. [IF=4.845] Ruiquan Hou et al."Preparation of alginate–chitosan floating granules loaded with 2-methyl-4-chlorophenoxy acetic acid (MCPA) and their bioactivity on water hyacinth."Pest Manag Sci. 2021 Sep;77(9):3942-3951
33. [IF=5.923] Yu Cheng et al."Sponges of Carboxymethyl Chitosan Grafted with Collagen Peptides for Wound Healing."Int J Mol Sci. 2019 Jan;20(16):3890
32. [IF=6.953] Jinfeng Mei et al."Removal of Sr(II) from water with highly-elastic carboxymethyl chitosan gel."Int J Biol Macromol. 2020 Nov;163:1097
31. [IF=6.953] Lei Ma et al."Synthesis and characterization of injectable self-healing hydrogels based on oxidized alginate-hybrid-hydroxyapatite nanoparticles and carboxymethyl chitosan."Int J Biol Macromol. 2020 Dec;165:1164
30. [IF=7.312] Shenghao Zhao et al."Innovative benign-to-design functionalized adsorbents from biomass for rapid azo-dyes separation."Sep Purif Technol. 2020 Jun;241:116633
29. [IF=7.991] Qinghua Wei et al."Atomic-scale and experimental investigation on the micro-structures and mechanical properties of PLA blending with CMC for additive manufacturing."Mater Design. 2019 Dec;183:108158
28. [IF=9.078] Weiwang Qiu et al."Peptidoglycan-inspired peptide-modified injectable hydrogels with enhanced elimination capability of bacterial biofilm for chronic wound healing."Compos Part B-Eng. 2021 Dec;227:109402
27. [IF=9.229] Guanghui Xi et al."Polysaccharide-Based Lotus Seedpod Surface-Like Porous Microsphere with Precise and Controllable Micromorphology for Ultrarapid Hemostasis."Acs Appl Mater Inter. 2019;11(50):46558–46571
26. [IF=9.381] Yu Yang et al."Carboxymethyl β-cyclodextrin grafted carboxymethyl chitosan hydrogel-based microparticles for oral insulin delivery."Carbohyd Polym. 2020 Oct;246:116617
25. [IF=9.642] Chaofan Zheng et al."Structural design of magnetic biosorbents for the removal of ciprofloxacin from water."Bioresource Technol. 2020 Jan;296:122288
24. [IF=10.041] Lin Zhang et al."Natural polymeric and peptide-loaded composite wound dressings for scar prevention."Appl Mater Today. 2021 Dec;25:101186
23. [IF=18.808] Xiangyi Yin et al."Bio-Multifunctional Hydrogel Patches for Repairing Full-Thickness Abdominal Wall Defects."Adv Funct Mater. 2021 Oct;31(41):2105614
22. [IF=2.262] Yong Zhang et al."Ion imprinted adsorbent for the removal of Ni(II) from waste water: preparation, characterization, and adsorption."J Disper Sci Technol. 2019;40(12):1751-1760
21. [IF=3.361] Dongjun Lv et al."Synthesis and color properties of novel polymeric dyes based on grafting of anthraquinone derivatives onto O-carboxymethyl chitosan."Rsc Adv. 2017 Jun;7(53):33494-33501
20. [IF=3.361] Dongjun Lv et al."Synthesis and color properties of novel polymeric dyes based on grafting of anthraquinone derivatives onto O-carboxymethyl chitosan."Rsc Adv. 2017 Jun;7(53):33494-33501
19. [IF=6.331] Z. Z. Ding et al."Simulation of ECM with silk and chitosan nanocomposite materials."J Mater Chem B. 2017 Jun;5(24):4789-4796
18. [IF=6.953] Yingbei Huang et al."Preparation and evaluation of Bletilla striata polysaccharide/carboxymethyl chitosan/Carbomer 940 hydrogel for wound healing."Int J Biol Macromol. 2019 Jul;132:729
17. Yang, Liupeng, et al. "Fabrication of sulfoxaflor‐loaded natural polysaccharide floating hydrogel microspheres against Nilaparvata lugens (Stal) in rice fields." Pest management science 76.9 (2020): 3046-3055.https://doi.org/10.1002/ps.5855
16. Yang, Liupeng, et al. "Fabrication of sulfoxaflor‐loaded natural polysaccharide floating hydrogel microspheres against Nilaparvata lugens (Stal) in rice fields." Pest management science 76.9 (2020): 3046-3055.https://doi.org/10.1002/ps.5855
15. Shaopeng Zhang, Yayi Dong, Zhen Yang, Weiben Yang, Jiaqing Wu, Chang Dong, Adsorption of pharmaceuticals on chitosan-based magnetic composite particles with core-brush topology, Chemical Engineering Journal, Volume 304, 2016, Pages 325-334, ISSN 1385-8947,
14. Feng, Song, et al. "Coumarin-Containing Light-Responsive Carboxymethyl Chitosan Micelles as Nanocarriers for Controlled Release of Pesticide." Polymers 12.10 (2020): 2268.https://doi.org/10.3390/polym12102268
13. Jinfeng Mei, Siqi Mo, Hui Zhang, Xudong Zheng, Zhongyu Li, Removal of Sr(II) from water with highly-elastic carboxymethyl chitosan gel, International Journal of Biological Macromolecules, Volume 163, 2020, Pages 1097-1105, ISSN 0141-8130, https://doi.org/1
12. 王小松,馬磊,劉志穎,李托,朱瀚,劉東陽,沈其榮.貴州木霉NJAU4742幾丁質(zhì)酶基因chi8的克隆、表達(dá)和酶學(xué)特性研究[J].南京農(nóng)業(yè)大學(xué)學(xué)報,2021,44(01):111-118.
11. 汪凱. 口服次血紅素六肽改善2型糖尿病肝臟胰島素抵抗的機(jī)制研究[D].吉林大學(xué),2020.
10. 王欽,沈凱,王勝男,蔡亮亮.鹽酸川芎嗪羧甲基殼聚糖絲素蛋白微球的制備和體外釋放特性[J].中國藥師,2020,23(08):1504-1509.
9. 藍(lán)梧濤, 吳雪輝, 章文. 油茶葉多酚純化工藝優(yōu)化及其對油脂的抗氧化作用[J]. 南方農(nóng)業(yè)學(xué)報, 2019, 050(009):P.2058-2064.
8. 李繼城, 孔松芝, 李東東,等. 羅非魚皮膠原蛋白肽在潤膚霜中的應(yīng)用及性能評價[J]. 食品工業(yè)科技, 2018.
7. 胡曉飛, 劉善新, 蘇酩. 祛瘀消癭顆粒水提液羧甲基殼聚糖絮凝工藝的優(yōu)化[J]. 中成藥, 2016, 38(011):2497-2499.
6. 王欽, 沈凱, 王勝男,等. 鹽酸川芎嗪羧甲基殼聚糖絲素蛋白微球的制備和體外釋放特性.
5. 王汀,丘曉琳,盧立新,周兵林.用于儲能的復(fù)合定形相變材料的制備與性能研究[J].能源化工,2019,40(03):1-6.
4. 王汀, 丘曉琳, 盧立新,等. 多孔凝膠基碳納米定形相變材料的制備與表征[J]. 精細(xì)化工, 2019, 36(11).
3. 童艷萍 肖艷.雙重動態(tài)化學(xué)鍵交聯(lián)水凝膠的制備及性能[J].功能高分子學(xué)報 2020 33(03):305-312.
2. 劉舉慧 趙峰 郭建峰. pH敏感性葉酸修飾羧甲基殼聚糖/CaCO3混合納米球作為藥物載體的研究[J]. 現(xiàn)代化工 2018 038(004):135-138.
1. 康小虎 白志山 王炳捷 楊曉勇.APTES改性羧甲基殼聚糖微球?qū)︺U離子吸附性能及機(jī)理研究[J].功能材料 2019 50(08):8161-8169.
質(zhì)檢證書(COA)
輸入產(chǎn)品批號:
如何獲取質(zhì)檢證書(COA)?
請輸入貨號和一個與之匹配的批號。
例如:
批號:JS298415 貨號:S20001-25g
在貨品標(biāo)簽上如何找到貨號和批號?
點擊這里查看標(biāo)簽示例
×
如何獲取質(zhì)檢證書(COA)
摩爾濃度計算器
質(zhì)量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)
質(zhì)量
pg
ng
μg
mg
g
kg
=
濃度
fM
pM
nM
μM
mM
M
×
體積
nL
μL
mL
L
×
分子摩爾量
計算
重置
相關(guān)產(chǎn)品
服務(wù)支持
技術(shù)支持
大包裝詢價
快遞查詢
聯(lián)系我們
意見反饋
用戶支持
技術(shù)支持
大包裝詢價
說明書下載
質(zhì)檢下載
質(zhì)量與法規(guī)
訂購指南
快遞查詢
退換貨政策
付款方式
配送方式
運費說明
關(guān)于我們
公司簡介
資質(zhì)榮譽
聯(lián)系我們
意見反饋
通用條款
聯(lián)系我們
電話:400-666-5481
傳真:021-55068248
地址:上海市松江區(qū)長塔路465號6幢
手機(jī)商城
微信公眾號
本公司的所有產(chǎn)品僅用于科學(xué)研究或者工業(yè)應(yīng)用等非醫(yī)療目的,不可用于人類或動物的臨床診斷或治療,非藥用,非食用。
? 2005-2025 源葉生物 版權(quán)所有,并保留所有權(quán)利。ICP備案證書號:滬ICP備09098663號-9
上海工商
滬公網(wǎng)安備 31011702002021號
危險品化學(xué)品經(jīng)營許可證(不帶存儲)
營業(yè)執(zhí)照(三證合一)
回到首頁
0
購物車
在線咨詢
400-666-5481
北京
上海
天津
廣東
江蘇
浙江
山東
湖北
湖南
安徽
東北
西北
河南河北
江西廣西
福建海南
山西內(nèi)蒙
四川重慶
云南貴州
客服熱線
400-666-5481
周一至周六:8:30-17:30
關(guān)注我們
掃一掃關(guān)注上海源葉微信公眾號
回到頂部
首頁
技術(shù)支持
購物車
會員